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首页> 外文期刊>Journal of intelligent material systems and structures >Evolution of electromechanical admittance of piezoelectric transducers on a Timoshenko beam from wave propagation perspective
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Evolution of electromechanical admittance of piezoelectric transducers on a Timoshenko beam from wave propagation perspective

机译:从波传播角度看蒂莫申科束上压电换能器机电导纳的演变

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摘要

This article analytically formulates and investigates the evolution of electromechanical admittance of piezoelectric transducers collocated on a finite beam from wave propagation perspective. First, the analytic wave solutions are obtained based on the linear piezoelectricity and the Timoshenko beam theory. Then, the evolution of wave propagation to vibration on a finite beam has been formulated in terms of a wave unit which appears periodically due to the multiple reflections at beam supports. The formulation has been extended to describe the underlying mechanism how electromechanical signatures evolve from wave units. The support conditions and material damping of a beam have been considered explicitly for both wave units and electromechanical signatures. The validity of the proposed formulation has been demonstrated through proof-of-concept numerical examples providing valuable physical insights into the relevance between wave units and electromechanical signatures.
机译:本文从波的传播角度分析性地制定和研究了压电换能器在有限梁上的机电导纳的演变。首先,基于线性压电性和Timoshenko束理论获得解析波解。然后,已经根据波单位表述了波传播到振动在有限梁上的演变,该波单位由于在梁支撑处的多次反射而周期性地出现。该公式已被扩展以描述潜在的机理,即机电信号是如何从波单位演变而来的。对于波单元和机电信号,已经明确考虑了梁的支撑条件和材料阻尼。通过概念验证的数值示例已经证明了所提出的公式的有效性,这些数值示例提供了有价值的物理见解,以了解波动单位与机电信号之间的相关性。

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